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LotjaGi2g1v0255500.1

Overview

Field Value
Gene ID LotjaGi2g1v0255500
Transcript ID LotjaGi2g1v0255500.1
Related isoforms 7
Lotus japonicus genome version Gifu v1.2
Description Plasma membrane ATPase; TAIR: AT5G62670.1 H -ATPase 11; Swiss-Prot: sp|Q9LV11|PMA11_ARATH ATPase 11, plasma membrane-type; TrEMBL-Plants: tr|A0A0B2PVV0|A0A0B2PVV0_GLYSO Plasma membrane ATPase; Found in the gene: LotjaGi2g1v0255500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:72173633..72182786) extracted from Lotus japonicus Gifu genome v1.2.

TGGTGGTAAAAAAGTCTATAGAATATTATAGAAGTAGAGTGTACCTGGAAGGGGTACATGAAATCTTCATTGAGTTGCTT ACCATGCTGTCCATTTAAAGCTGCCACTTAGAGGGTTAGGACAAAATAACACCAAAGCAAACGAAACGTCACAGCATATT TCTATTCTATTATACTGGAACTGAGGTGAAGGAAGGAGAAAATTCTGTTTTAGTGTGATTACACTGGCTGTTGAGATCTT CACATAAAGCTTACACACCTGACACCTTTATTGTTGTCTAGGACCTAGAGCTTAGCTTTTGGTTCAGATGGCTGACAAAG AAGATGCCATGCATGCAGTTTTGAAGGAAGCTGTGGATTTGGTACCTAACAAAGCAGCCCATTACTCTGTTTCTTTCCCC TGTTTTCGTAGAATTGTTTAGAGTTTGAAATGTTTTGCATTTGGTTTTGTACCATTTTTTTCAAAAAGATCATTCCTCTA TCTCTCTCTCTCTTTCTCACTGATCATTGGTTAGTGAGTGTTTCTGGGTTTTGTTTCTATTTGTGGTCTTGGGAATTTCA AGTTCTGTTCTGTTATCTGCAAATTTTGTCTCCTTTTATTGTTCTGATTATGCCTCTCTCTCTCTCTCTCTCTCTCTCTC TCTCTCTCTCTCTCTCTCTCTCATTCAATAGCTTGGATTTGATTGCAGGAAAGCGTGCCAGTTGAGGAGGTGTTTGAGAC TCTGAGGTGTGATTCAAATGGACTGACAACAAAGGCTGCTGAGGAGAGATTGGCCATCTTTGGCTACAACAAGCTTGAGG AGAAGGAGGTCTTGTCCTTTAGTGTTTTGACTGTTTTCTTGTTTGTTTTGCTTTTTTCTCTTTTGTGATTGCAGATGTGA AACAGATAAATTTCCCCTTATTGTAATGCTACAGTAGACACTACAAAATGATCCTATGATCTGTTGTTTAATAAAATTTG TCTTTATTCTTTGGAGAGCTTTGAAAGAGGTTTACTTCTTTTTTGTTGTTTGTGAGGTTCTATGGCTTATCTTGTGGATT TTGCAGGAGAGCAAGTTTTTTAAGTTTTTGGGATTTATGTGGAATCCTCTCTCATGGGTCATGGAAGCAGCAGCAATCAT GGCCATTGCTCTGGCCAATGGAGGAGTAAGCTACTGAATACTTGTACTCTTTAATTTTTTTGAAAATTTATTTTAGTTTT TGAATGTTTGGATGCACAAAATAGTGAAAAAACTATTGAACATAGTTGTACATGTCAAGGATAGAAGGTTCTTTTGAGTT TTAACATTGTATTATACTGTTATATTTTGCACAATTTTCTGATATTATTCTTCATTTGGAAATGGATTCTGTGCGGTCAA GGAAACCCTACATTCACGCAGTTACACAACTGATTTATATCCACCATAGGATGAAATATATGAACCGACCGATTTTGGTT GGATGAATCAGATTGTGTGACAGCATGAATGCAGAGTATCCTTAACTGCAGGGAACCTAATCCATCTTCATATCCTTCAG GGCAAACCTCCTGATTGGCAAGACTTTGTTGGGATTATCTCACTTCTTTTTATAAATTCAACAATAAGTTTCATAGAGGA GAACAATGCTGGTAATGCTGCTGCAGCTCTAATGGCTCGCCTAGCGCCCAAAGCTAAGGTATTAGTTACTAAAAAGCAGA TATGTTTGTTGCTATAACTTATTTTTGGATTTTGGTGTAAGATTCATGTAAGAATCAATATTTGATTCATACATTTTTTG TCTTTGTTTATTATGCCAAAAATACTTATTCAGGTCCTTCGAGATGGGAAATGGAATGAGGAAGATGCTAGTATTCTTGT TCCTGGTGATATAATTAGTGTTAAGTTAGGAGATATTATCCCTGCAGATTCTCGCCTGCTTGAAGGTGATCCATTGAAGA TTGATCAGGTGCGCCTTGTTGCCTTTTGCTGTCTTGTCTTGTTTATGATATCTTGCTATCATTTTCTCTTTGTTGATCTC TTAGTTTCCGGTTCGGGTTGCAGTCTGCACTTACAGGTGAGTCTCTTCCAGTCACAAAAGGCCCTGGTGATAGTGTTTAT TCAGGCTCTACATGCAAGCAGGGAGAGATTGAAGCACTTGTTATTGCAACTGGAGTTCATACCTTCTTTGGCAAGGCTGC TCATCTTGTTGACTCCACAAATCAAGTTGGCCATTTTCAGAAGGTAAAATGAGGATTCGGATTTAATATAGTCGATTGCA CTGCACTCACAAATTTAGGTCTTTCGATCAAGATTAGACAGCTTACATCTTTAGATGCATTTATATTCAATTTATTAAAT CAAATAGGTACTGTTTGATTTAATCCAATGGCTCATAATGACTGATTGCACTGACTGCGTCAAAAAGTGACTGCAGTCAG TTCAGGTCTGTAAAATGAACTTGAGTCTTTTTAACTTTATCCAAAAATAAGAAGAAAGGGCCTTCTCACGAGAGAAATAT AAGTTAAATGTCATTAGAATTAGTTGCAGGACTAAGGACTTCAAATATTAGTGAGTCAGAAGTCATAACATATAATGTAG AGAACTTATGGACACAAAATGGTATGTGCTTAAAAAGTTGATGGTTTTCAGGTTGTGGAGCTGTAGCGTATGATACAATC TTTGCACATCAACAAGCTTCCTTTTGATTTTGCTTTCTTCTATATATGAAAAAAAAAATGTTTAACATCTATACTTAGCA TTATTTTGGTTCCTTAAACAGGTCCTAACTTCTATTGGGAACTTCTGCATATGTTCAATTGCTGTGGGAATGATAGTAGA GATCATTGTCATGTACCCTATTCAACACCGGAAATATCGCCCCGGGATTGACAATCTGCTAGTGCTTCTTATTGGAGGAA TTCCTATAGCCATGCCTACTGTTTTGTCAGTGACAATGGCAATTGGATCCCACCGTTTATCCCAGCAGGTAGACATTAGT GCTTCTATTATAAGTGCTTATTTCAAGTTTTCACCAACTAAATGTTAATCTCTATTAGTTATGCTTTTTATAATTATTGC AGGGTGCTATTACTAAAAGAATGACAGCCATAGAAGAGATGGCAGGTATGGATGTATTGTGCAGTGACAAAACTGGAACT TTGACTTTGAATAAACTATCAGTTGACAAGAATCTTATTGAGGTTAGTAGTAGTCAGTTTTGTCTTGCTTTGATTTCTGA TTTTCTTTGTGGTATTGCTACACGAGTGTTTTTAATGTTTTATGTAGGTTTTTGCTAAAGGAGTAGACACAGATACTGTT GTTCTCATGGCTGCTCGAGCTTCTAGAGTGGAAAACCAAGATGCTGTAGATGCTGCTATTATAGGGATGTTGGGAGATCC AAAAGAGGTATAATATTCATTGGCAATAATATTTCTCTTTTTCTTAATGCTAACAAAAAACATGCTCAATGAAAACATGT TTCTTGTGTTTAGTGCAGCTAGTATAACACTAACATTATAAAAAAAAAACTGTTTTCATTTCTTTTTTTTCTGTTTACTA CATGCAGTTTTCTGCTCTAATCACCACATTTCAAATATCTAATATATTTAATTTACTGAGTTATTAGGATTTAGGATTAT TAGTTACTGTAGTAGGAGATTTATATTGGGGAAAGTATTAATGTAGTAAGGTCTATTTCTATACATTTGTTAAAATTATG TACAGAAGTATTTACTCAATCATATTCTGTTTCTTACCTCTAGTATCTTCATCTTAAATATTTTGTGTATGACTTTTTCT AAATTTTAGGCAAGGGCTGGTATTAGAGAGGTTCACTTCCTCCCCTTTAATCCAACTGACAAACGGACTGCTCTAACTTA TATAGACCCTGATGGTAAAATGCACCGTGTCAGCAAAGGTGCACCTGAGCAGGTAACTTGAGGAGCCAACTTATTACTTG TGTTTAATGTTCCCACATGACAATGGAAGTGATTCATACATTTCATTACTGTTAGATTTTGAACCTTGCACGCAATAAAT CAGAGATAGAACACAGAGTTCACGCTGTCATTGATAAGTTTGCAGAGCGCGGATTACGGTCTCTTGCAGTAGCCTACCAG GTACATGTTTATTATGCTCTATCTTTTGGTGTGGAGGGAGCAAATACAAGTTACATTATTGCTGACTACATTGGTCATTA TATCACAGGAAGTTCCTGAAGGAAGGAAAGAGAGCCCAGGAGGGCCTTGGCAATTTATTGGATTGATGCCTCTTTTTGAC CCACCTAGACATGATAGTGCAGAGACGATACGAAGGGCATTGAATCTCGGAGTAAGTGTCAAAATGATAACAGGTAACTG CTTGAATTGCGTTGGTAAATTATCAAACTTATTGTTGGTTAAGTAATTGGAGTTAGGCAAAATTGCACAAAAAGGAACAT TCTTGCTCCTGACATAAACTGCAGTTGCAATTGCAATTCTGACTAGTGTTAACATTTTAGCTTCTTTTCTATATGTCTGG TTTGCATTTTTGTGGCATGGTTTGTGCAATTAGTTATCTTAGTATAACCATGCTATTATTTTCTCTTGTAAATGTGTCGC TTCTCACTTGTGCTTTGGATATAATTATAGTAATTTACATTAACTTTTACAAATAAATCCAGAAAGTCGTGTTAAGTTTT ATGGCCTCCCTTCATGTGTCTATTAACAGGGAATTTGCATATGGTTTTTACTCCTTTGTGAAGTCACAATGTATTTAAGT TGAATTTTGAAATTAGTGCTTGTAGCCTGACCTTGTCAATACCTATGCATGAAAAAATTGAAATTATTCAGAGATTTGGA AGCATTAATAGTTTGGTTTATCTAATTGACATATTTCTGAATGATGTTTTTGTGTTCTATTTCTTCTAGGTGACCAACTA GCAATAGCAAAAGAAACAGGACGCCGTCTGGGAATGGGAACCAACATGTACCCCTCATCGACTTTATTAGGCCAAAACAA GGATGAAGCAATTACTACCTTACCAGTTGATGAATTAATTGAAAAGGCGGATGGATTTGCTGGTGTTTTTCCAGGTACAT CATCTTTCTTTTCTCTTTAAATTCCAAGCATTTAGAAAACATATAATATTCCTGACATTCAATTTGAAAACAAGCTAGAA TTCTTATAATATCTTGGAGAAGTAACTAAATGGCTCAGATCAGATGCCACTTTCATATGATGTTGCTCAGTTTTACTTTC ATTTGCTTGAATTGATGACTTTGTTTAACACAGAGCACAAATATGAGATCGTGAAACGTTTACAAGCTAGGAAACATGTA TGCGGGATGACTGGTGATGGGGTTAATGATGCCCCTGCTCTTAAAAAGGCAGATATTGGGATAGCTGTTGCTGATGCAAC TGATGCGGCTCGTAGTGCTTCTGATATTGTTCTAACAGAACCAGGTCTCAGTGTTATCATTAGTGCTGTACTGACGAGCC GTGCAATATTCCAAAGGATGAAGAATTACACGGTGAGTCTACATTCATTTCTAACCTCTAATGGAGTTTGGTTTTAAGTT GAACACATGGTAGTTAAGGTGAAATGCATGACTCAGCTACCATCTGATGACTTTAGAAAATTTAATATTCTGCTGTATTT TCTTATCATCTAATAGCATCATGTCTAAAATCCTTTAATGCTCCATTTTAGTTAAATAATGATAATGATGATTTTTTAAA TTTCAGATTTAACTTATTGATTTCCTTTTGTACAGATCTATGCAGTTTCCATCACAATCCGTATAGTGGTAATTATATAG CCTTAGCTTTACTATTACCTATTGTTCTTGTGCTCATATGAATTTGATTACTGACTTCAGAATTTCTTCTGTGACAGCTT GGTTTCATGTTACTGGCTCTCATATGGCAATTTGATTTTCCACCATTCATGGTGCTGATTATTGCAATTCTTAATGATGG TCTGTACCTTATTTTTCAACGCTAACCTAGTTTATCCCTTTTTATTAGTAAAGTCATGGATATTTTTGTAACCATTGCAA ACTAATTAGTTGCCAAAGAGTGCTGCTGTTTCTGATGTCAAAACCCCTTATTACCTTTTTCTCTCCTTAAATATATGATA TGTTGAATATTTCAGGTACCATTATGACAATATCAAAGGATAGGGTAAAACCATCTCCATATCCAGATAGCTGGAAGCTG GCAGAGATCTTTACCACTGGAATAGTTCTTGGTGGTTATTTGGCTATGATGACAGTCATTTTCTTTTGGGCGGCATATAA AACAGATTTTTTCCCTGTAAGAAAACTAGTCTTGAATCAAATTAATGGTATTCATGTGTGTCAAGGGCCAAATGAAACTT GTCCATATCCAAAGCACACCCTTATAAGCTTTTTTGGATTTCGGATGATGATTGCTGCTGACTTTCCATGACTAACTTTG CTCAATTGCCTGTACTGATCCTCATTGAGAAATTTTGCAGCGCAATTTCGGGGTCCCAAGTCTTCAGAAAAAGGATGTGG ATGACTTTAGAATGCTTGCCTCAGCAATATACCTGCAAGTTAGCACAATTAGTCAAGCCCTCATATTCGTTACACGGGCG CGGAGTTGGTCTTACGTTGAGCGTCCGGGTTTGCTTCTTATAGCAGCTTTTATTATTGCCCAGCTGGTGAGTAGCTTATT TTTTCCTCAACCAATTCTGGCACTCATATGCTACTTACAGTAGTTTCTCCCAAGAATTGATTTTGACTTTAGAACCAAAT GTAGAAGGATTTCCACACATGCTATTAATAACTTGTCCATCTTCTTTGATGAGTAGATAGCTACACTGATTGCAGTTTAT GCAAATTGGAGTTTTGCTGCTATTGAAGGGATTGGATGGGGTTGGGCTGGTGTTGTTTGGCTTTATAACCTCATCTTTTA TATCCCACTTGATTTCATCAAGTTCATTACTCGATATGCCTTGAGTGGCAGGGCTTGGGATCTTGTTATTGAACAAAGGG TATGTGTAATGTGTTCCTGTCTTCCCTATCAATTATATTGATTAATTCAACATTTGAGCCTGTTGCTTAATTTGTCGAAT GCAATCTTTGTCAGATTGCTTTTACAAGGAAAAAGGATTTTGGAAAGGAAGAACGCGAACTTAAATGGGCACATGCACAG AGGACACTTCACGGCCTTCATCCACCAGAAACTAAGATGTTCAATGAACGTAAAAATTACACAGACATTAATCAGATGGC TGAAGAGGCTAAAAGACGAGCAGAAATTACAAGGTATGCATTCATGTGTTTATGCTAAACTATGATGATCTCCTCTGAGG TAGTTTTCCTTAAAATCAAGATTAGGCCTAACACTACCCCAAAAACTAGCTTAGAAATGAGAATTGTTCTACCTTTTATT AAGACTTATTTGGTCATATCTCTAGTCAATGTGAGACTTTTCTACCGTCGCCTGTATCCATAACTTCTTACATGTTGCAT ATTCCCATGGCATTTATGGGGAATTTTCATAAAATAAAATGCAAAGCATGTTCAGATGAAGCACTCAAGGCTCTTGTGAA CTTATGTTAAGATTTTTTTTTTGGCAGACTGAGAGAACTGCATACTCTGAAGGGCCATGTTGAGTCAGTGGTTAGGCTGA AGGGACTTGACATTGACACAATACAGCAAGCATACACTGTCTAAAAGGCAGACTTGATGTTGTAACAAATATATGCCTTA ACTTAAACCTATAGCACAGTTGTTCCTCCACACTGCACTCTATATGCTTGTTCCTGGCAGTTTTGCATGGATTGTGTGTG GAGGAAACACTAGGTTCTAGGATATTGAGAGTAGGATTCATAATATATTAGGGGTGGGACTCGTATAATTTAATAGGATT CCTTATGAATTTCAATCAATAAGAGAGTGATTATTGTAGAAAGTTGTTGACAGAGTATTGCTAGCATTTCTAATTTGTGT TGTGTCTAGAAAGACATGAAATTATCGATAGAGTACTCTAAAAAGTTTAAGACCCGTCTATGTGCACACCAAATAGCACT TATTAATTATTTAGTGCATTTTCTAGTAGATAAGCTCAAAGAAGCCCGTATCCAAACGGGCTCAGTAGTATTGCTAGCAT ATTGCTGCTTCATTGGTACATGCATAAAATGATTCAATTTTGAGGAAAAATTTATTGGATTAAGAAATAGATACTTTAAA TGGATCTAGTAAAACACAAAGCAGCACAAACAACAAAATGAAAACACAAAAGCAATCCTACGACATAACACAAAACTAAG AAACGCAAAAACAGACGCTCTAAACCTCTCTAGATGATTAGCTCTAAGATGTCTCACACAAGCATGCAAACCCTCATCAG TACTGGAAAATACAACTCCGCATAATTTCTCTGCTATCAAGACCTGGAGATCCTTCTTCTTCTTCGTAGGCCGACCTCAC CCTTTGTGAACAAGCGAGAATAAACAAGTTGTTGACAAGTAGAAGCAGATCTTCAAGTTTGTTGGCAGCTTTCATTGCAA TACATCAGCAATGTCATTCGTTATAATCAGTACAAGCTTCAACTAGAGCACTATTTTCAGAATACTGAAAAAATACACCT GAGTAGATACTCCTCCATATACGAGATGTCACACACATCTCAAAATCACATAACTTTCTTAAAGTTTGATCTACAGGATC ATAGCATAGTGCTGCTTCTTCACCTACAAGCCAAACCAATATTGATTTCTCTTGTTTTACTGGGCAAGCAATGTTAAGGC CAAAACGATTGAAGCCTAAATTCATGAATGGAAATTCAACTCCTAGATCAACACGGTGCCTCAATAACCAACTAGAGTAA TCTTCCTTAAGCTCAAAAATATCAAAAATATCAGTTTTGTTACTAAAATCAGTAACCATCAAATGCAAACTCCCACCTGA CTCCCCAAAATAAAAAAATTATCGGTTCTGCCATTCTAACAGGGGCATTGGGAAATTTTTGAGACACTGAGTATCAACAT CAAAATACACCGAGAACTCAGCTTTATTACACCAATGAATAGCACCATTGCAGTAAACAGCATTAGCAGGCTCCAGTGTA AATGTTGTAGAGAGAAAAACCCCAGGACCGATCCATGAACGGGTTTTGAAAGAATATAAATTGAAGACAGATGGAATCCG TGAACTCTGGCCACCCCGTGTTGCAATTGAAAAG 

CDS sequence (LotjaGi2g1v0255500.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTGACAAAGAAGATGCCATGCATGCAGTTTTGAAGGAAGCTGTGGATTTGGAAAGCGTGCCAGTTGAGGAGGTGTT TGAGACTCTGAGGTGTGATTCAAATGGACTGACAACAAAGGCTGCTGAGGAGAGATTGGCCATCTTTGGCTACAACAAGC TTGAGGAGAAGGAGGAGAGCAAGTTTTTTAAGTTTTTGGGATTTATGTGGAATCCTCTCTCATGGGTCATGGAAGCAGCA GCAATCATGGCCATTGCTCTGGCCAATGGAGGAGGCAAACCTCCTGATTGGCAAGACTTTGTTGGGATTATCTCACTTCT TTTTATAAATTCAACAATAAGTTTCATAGAGGAGAACAATGCTGGTAATGCTGCTGCAGCTCTAATGGCTCGCCTAGCGC CCAAAGCTAAGGTCCTTCGAGATGGGAAATGGAATGAGGAAGATGCTAGTATTCTTGTTCCTGGTGATATAATTAGTGTT AAGTTAGGAGATATTATCCCTGCAGATTCTCGCCTGCTTGAAGGTGATCCATTGAAGATTGATCAGTCTGCACTTACAGG TGAGTCTCTTCCAGTCACAAAAGGCCCTGGTGATAGTGTTTATTCAGGCTCTACATGCAAGCAGGGAGAGATTGAAGCAC TTGTTATTGCAACTGGAGTTCATACCTTCTTTGGCAAGGCTGCTCATCTTGTTGACTCCACAAATCAAGTTGGCCATTTT CAGAAGGTCCTAACTTCTATTGGGAACTTCTGCATATGTTCAATTGCTGTGGGAATGATAGTAGAGATCATTGTCATGTA CCCTATTCAACACCGGAAATATCGCCCCGGGATTGACAATCTGCTAGTGCTTCTTATTGGAGGAATTCCTATAGCCATGC CTACTGTTTTGTCAGTGACAATGGCAATTGGATCCCACCGTTTATCCCAGCAGGGTGCTATTACTAAAAGAATGACAGCC ATAGAAGAGATGGCAGGTATGGATGTATTGTGCAGTGACAAAACTGGAACTTTGACTTTGAATAAACTATCAGTTGACAA GAATCTTATTGAGGTTTTTGCTAAAGGAGTAGACACAGATACTGTTGTTCTCATGGCTGCTCGAGCTTCTAGAGTGGAAA ACCAAGATGCTGTAGATGCTGCTATTATAGGGATGTTGGGAGATCCAAAAGAGGCAAGGGCTGGTATTAGAGAGGTTCAC TTCCTCCCCTTTAATCCAACTGACAAACGGACTGCTCTAACTTATATAGACCCTGATGGTAAAATGCACCGTGTCAGCAA AGGTGCACCTGAGCAGATTTTGAACCTTGCACGCAATAAATCAGAGATAGAACACAGAGTTCACGCTGTCATTGATAAGT TTGCAGAGCGCGGATTACGGTCTCTTGCAGTAGCCTACCAGGAAGTTCCTGAAGGAAGGAAAGAGAGCCCAGGAGGGCCT TGGCAATTTATTGGATTGATGCCTCTTTTTGACCCACCTAGACATGATAGTGCAGAGACGATACGAAGGGCATTGAATCT CGGAGTAAGTGTCAAAATGATAACAGGTGACCAACTAGCAATAGCAAAAGAAACAGGACGCCGTCTGGGAATGGGAACCA ACATGTACCCCTCATCGACTTTATTAGGCCAAAACAAGGATGAAGCAATTACTACCTTACCAGTTGATGAATTAATTGAA AAGGCGGATGGATTTGCTGGTGTTTTTCCAGAGCACAAATATGAGATCGTGAAACGTTTACAAGCTAGGAAACATGTATG CGGGATGACTGGTGATGGGGTTAATGATGCCCCTGCTCTTAAAAAGGCAGATATTGGGATAGCTGTTGCTGATGCAACTG ATGCGGCTCGTAGTGCTTCTGATATTGTTCTAACAGAACCAGGTCTCAGTGTTATCATTAGTGCTGTACTGACGAGCCGT GCAATATTCCAAAGGATGAAGAATTACACGATCTATGCAGTTTCCATCACAATCCGTATAGTGCTTGGTTTCATGTTACT GGCTCTCATATGGCAATTTGATTTTCCACCATTCATGGTGCTGATTATTGCAATTCTTAATGATGGTACCATTATGACAA TATCAAAGGATAGGGTAAAACCATCTCCATATCCAGATAGCTGGAAGCTGGCAGAGATCTTTACCACTGGAATAGTTCTT GGTGGTTATTTGGCTATGATGACAGTCATTTTCTTTTGGGCGGCATATAAAACAGATTTTTTCCCTCGCAATTTCGGGGT CCCAAGTCTTCAGAAAAAGGATGTGGATGACTTTAGAATGCTTGCCTCAGCAATATACCTGCAAGTTAGCACAATTAGTC AAGCCCTCATATTCGTTACACGGGCGCGGAGTTGGTCTTACGTTGAGCGTCCGGGTTTGCTTCTTATAGCAGCTTTTATT ATTGCCCAGCTGATAGCTACACTGATTGCAGTTTATGCAAATTGGAGTTTTGCTGCTATTGAAGGGATTGGATGGGGTTG GGCTGGTGTTGTTTGGCTTTATAACCTCATCTTTTATATCCCACTTGATTTCATCAAGTTCATTACTCGATATGCCTTGA GTGGCAGGGCTTGGGATCTTGTTATTGAACAAAGGATTGCTTTTACAAGGAAAAAGGATTTTGGAAAGGAAGAACGCGAA CTTAAATGGGCACATGCACAGAGGACACTTCACGGCCTTCATCCACCAGAAACTAAGATGTTCAATGAACGTAAAAATTA CACAGACATTAATCAGATGGCTGAAGAGGCTAAAAGACGAGCAGAAATTACAAGACTGAGAGAACTGCATACTCTGAAGG GCCATGTTGAGTCAGTGGTTAGGCTGAAGGGACTTGACATTGACACAATACAGCAAGCATACACTGTCTAA 

Protein sequence (LotjaGi2g1v0255500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MADKEDAMHAVLKEAVDLESVPVEEVFETLRCDSNGLTTKAAEERLAIFGYNKLEEKEESKFFKFLGFMWNPLSWVMEAA AIMAIALANGGGKPPDWQDFVGIISLLFINSTISFIEENNAGNAAAALMARLAPKAKVLRDGKWNEEDASILVPGDIISV KLGDIIPADSRLLEGDPLKIDQSALTGESLPVTKGPGDSVYSGSTCKQGEIEALVIATGVHTFFGKAAHLVDSTNQVGHF QKVLTSIGNFCICSIAVGMIVEIIVMYPIQHRKYRPGIDNLLVLLIGGIPIAMPTVLSVTMAIGSHRLSQQGAITKRMTA IEEMAGMDVLCSDKTGTLTLNKLSVDKNLIEVFAKGVDTDTVVLMAARASRVENQDAVDAAIIGMLGDPKEARAGIREVH FLPFNPTDKRTALTYIDPDGKMHRVSKGAPEQILNLARNKSEIEHRVHAVIDKFAERGLRSLAVAYQEVPEGRKESPGGP WQFIGLMPLFDPPRHDSAETIRRALNLGVSVKMITGDQLAIAKETGRRLGMGTNMYPSSTLLGQNKDEAITTLPVDELIE KADGFAGVFPEHKYEIVKRLQARKHVCGMTGDGVNDAPALKKADIGIAVADATDAARSASDIVLTEPGLSVIISAVLTSR AIFQRMKNYTIYAVSITIRIVLGFMLLALIWQFDFPPFMVLIIAILNDGTIMTISKDRVKPSPYPDSWKLAEIFTTGIVL GGYLAMMTVIFFWAAYKTDFFPRNFGVPSLQKKDVDDFRMLASAIYLQVSTISQALIFVTRARSWSYVERPGLLLIAAFI IAQLIATLIAVYANWSFAAIEGIGWGWAGVVWLYNLIFYIPLDFIKFITRYALSGRAWDLVIEQRIAFTRKKDFGKEERE LKWAHAQRTLHGLHPPETKMFNERKNYTDINQMAEEAKRRAEITRLRELHTLKGHVESVVRLKGLDIDTIQQAYTV 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
Phobius 1 64 64 -
PANTHER 3 936 934 0.0
PANTHER 3 936 934 0.0
SUPERFAMILY 17 853 837 5.75E-86
SMART 17 89 73 7.6E-21
Pfam 20 83 64 4.1E-14
CDD 36 847 812 0.0
TIGRFAM 36 812 777 0.0
Phobius 65 88 24 -
TMHMM 65 87 23 -
Gene3D 66 144 79 5.0E-32
Phobius 89 99 11 -
TMHMM 97 116 20 -
Phobius 100 116 17 -
TIGRFAM 103 350 248 1.4E-37
Phobius 117 246 130 -
Pfam 132 310 179 1.4E-47
SUPERFAMILY 134 231 98 8.76E-29
PRINTS 181 195 15 4.9E-42
Gene3D 197 344 148 4.6E-15
TMHMM 244 266 23 -
Phobius 247 269 23 -
Phobius 270 280 11 -
TMHMM 281 303 23 -
Phobius 281 303 23 -
Phobius 304 648 345 -
SFLD 313 641 329 0.0
SFLD 313 641 329 0.0
Pfam 327 604 278 1.9E-18
SUPERFAMILY 327 637 311 2.27E-40
PRINTS 331 345 15 4.9E-42
ProSitePatterns 333 339 7 -
Gene3D 345 486 142 5.6E-46
PRINTS 447 465 19 4.0E-59
PRINTS 485 496 12 4.9E-42
Gene3D 487 560 74 1.9E-5
PRINTS 507 517 11 4.9E-42
PRINTS 562 578 17 4.0E-59
TIGRFAM 565 679 115 5.2E-28
Gene3D 568 852 285 1.9E-109
PRINTS 590 609 20 4.9E-42
PRINTS 590 606 17 4.0E-59
PRINTS 613 625 13 4.9E-42
PRINTS 621 646 26 4.0E-59
TMHMM 649 671 23 -
Phobius 649 671 23 -
Phobius 672 676 5 -
Phobius 677 694 18 -
Phobius 695 713 19 -
TMHMM 713 735 23 -
Phobius 714 736 23 -
Phobius 737 759 23 -
Phobius 760 780 21 -
PRINTS 766 787 22 4.0E-59
Phobius 781 791 11 -
TMHMM 791 813 23 -
Phobius 792 813 22 -
Phobius 814 824 11 -
TMHMM 823 842 20 -
Phobius 825 842 18 -
Phobius 843 956 114 -

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function Nucleotide binding Interacting selectively and non-covalently with a nucleotide, any compound consisting of a nucleoside that is esterified with (ortho)phosphate or an oligophosphate at any hydroxyl group on the ribose or deoxyribose.
Molecular function Proton-exporting ATPase activity, phosphorylative mechanism Enables the transfer of protons from one side of a membrane to the other according to the reaction: ATP + H2O + H+(in) -> ADP + phosphate + H+(out). These transporters use a phosphorylative mechanism, which have a phosphorylated intermediate state during the ion transport cycle.
Cellular component Integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.
Biological process Proton export across plasma membrane The directed movement of hydrogen ions (protons) from inside a cell, across the plasma membrane and into the extracellular region.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0255500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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